孟凡会

发布日期:2013-08-11  浏览量:

姓名:孟凡会                                      职称/学术职务:副教授/博导

学历:研究生                                      学位:工学博士

E-mail: mengfanhui@tyut.edu.cn

 

个人简介:

孟凡会,太原理工大学副教授,博士生导师。2011年毕业于天津大学,2012年至2016年在山西潞安矿业(集团)有限责任公司、太原理工大学从事博士后研究,2016.82017.8在英国卡迪夫大学访学。主要围绕CO/CO2小分子转化制低碳烯烃/甲醇、以及甲醇转化制碳酸二甲酯开展研究,同时积极与企业合作开展煤矸石等固废资源化利用研究。主持国家自然科学基金面上项目、国家科技部重点研发项目子课题、山西省自然科学基金项目、省重点研发项目课题及山西潞安等企业项目12项,在Chem. Eng. J.Appl. Catal. BJ. Catal.Fuel等期刊发表学术论文80余篇,其中SCI/EI收录60余篇,授权国家发明专利20件,担任Catalysts期刊Guest EditorTopical Advisory Panel Member。承担《工业催化》教学。参编《煤化工工艺学》等教材及专著3部,获协会二等奖1项,参编国家标准1项。

 

研究方向和服务领域:

(1) CO/CO2加氢转化制低碳烯烃/甲醇

(2) 甲醇氧化羰基化制碳酸二甲酯

(3) 煤矸石分级分质资源化利用

 

主持在研科研项目:

[1].   国家自然科学基金面上项目,22479106OX-ZEO双功能催化剂中纳米GaZr氧化物的可控制备及其催化合成气制低碳烯烃反应协同机制,2025.01-2028.1250万,主持

[2].   国家重点研发计划项目子课题,2023YFB4103302甲醇直接氧化羰化合成碳酸二甲酯高稳定性催化剂开发,2023.12-2027.12102万,主持

[3].   山西省重点研发计划子课题,202102090301026,煤矸石基石油加工催化新材料,2022.01-2024.12,主持

[4].   企业委托,横向项目,2024.05-2025.05,主持

 

代表性学术论文:

[1].   Zhang P., Li F., Yao X., Zhang P., Wu Y., Xi M., Meng F., Kang L., Zhu M., Synergy induced by physical mixing m-ZrO2 and α-Ga2O3 for effective conversion of syngas to light olefins. J. Catal., 442 (2025) 115934.

[2].   Xi M., Cheng Y., Meng F., Yao X., Nawaz M. A., Saif M., Li Z., Reina T. R., Densely embedded homogeneous FeOx nanoparticles in N-doped carbon frameworks: A 3D scaffold catalyst for high-temperature Fischer-Tropsch synthesis. Chem. Eng. J., 503 (2025) 158333.

[3].   Meng F., Gong Z., Wang Q., Xing M., Nawaz M.A., Qiao Z., Jing J., Li W., Li Z. Effects of ZrO2 crystalline phase on oxygen vacancy of GaZr oxides and their properties for CO2 hydrogenation to light olefins, Catal. Today, 433 (2024) 114661.

[4].   Wang Q., Xing M., Wang L., Gong Z., Nawaz M.A., Blay-Roger R., Ramirez-Reina T., Li Z., Meng F. CO2 hydrogenation to light olefins over highly active and selective Ga-Zr/SAPO-34 bifunctional catalyst, Mol. Catal., 569 (2024) 114567.

[5].   Ding P., Meng F., Wang L., Qiao Z., Deng R., Yao H., Li Z. Enhanced stability of Cu/AC catalyst with modified hydrophobic layer for methanol oxidative carbonylation to dimethyl carbonate, Surf. Interfaces, 50 (2024) 104467.

[6].   Wang L., Meng F., Ding P., Nawaz M.A., Li Z. Highly active and selective ZIF-derived cobalt catalyst for methanol conversion to dimethyl carbonate, Appl. Organomet. Chem., 38 (2024) e7537.

[7].   Nawaz M.A., Blay-Roger R., Saif M., Meng F., Bobadilla L.F., Reina T.R., Odriozola J.A. Redefining the symphony of light aromatic synthesis beyond fossil fuels: A journey navigating through a Fe-based/HZSM-5 tandem route for syngas conversion, ACS Catal., 14 (2024) 15150-15196.

[8].   Meng F., Zhang P., Ma L., Yang G., Zhang R., Wang B., Hu Y., Li Z. Unraveling the role of GaZrOx structure and oxygen vacancy in bifunctional catalyst for highly active and selective conversion of syngas into light olefins, Chem. Eng. J., 467 (2023) 143500.

[9].   Meng F., Wang L., Asif Nawaz M., Wang Q., Gong Z., Li Z. Catalytic conversion of syngas to light hydrocarbons via simulated intermediates CO/CO2/DME/N2/H2 over the regulated acidity of SAPO-34, Chem. Eng. J., 474 (2023) 145895.

[10].           Meng F., Li B., Zhang J., Wang L., Li Z. Role of Zn-Al oxide structure and oxygen vacancy in bifunctional catalyst for syngas conversion to light olefins, Fuel, 346 (2023) 128351.

[11].           Meng F., Gong Z., Yang L., Wang Q., Xing M., Nawaz M.A., Li Z. Effect of zeolite topological structure in bifunctional catalyst on direct conversion of syngas to light olefins, Micropor. Mesopor. Mat., 362 (2023) 112792.

[12].           Zhang P., Ma L., Meng F., Wang L., Zhang R., Yang G., Li Z. Boosting CO2 hydrogenation performance for light olefin synthesis over GaZrOx combined with SAPO-34, Appl. Catal. B: Environ., 305 (2022) 121042.

[13].           张鹏, 孟凡会, 杨贵楠, 李忠. 金属氧化物在OX-ZEO催化剂中催化COx加氢制低碳烯烃研究进展, 化工进展, 41 (2022) 4159-4172.

[14].           Meng F., Yang G., Li B., Li Z. Promotion effect of vanadium on oxygen vacancy formation over MnGa oxide for syngas conversion into light olefins, Appl. Catal. A: Gen., 646 (2022) 118884.

[15].           Meng F., Liang X., Wang L., Yang G., Huang X., Li Z. Rational design of SAPO-34 zeolite in bifunctional catalysts for syngas conversion into light olefins, Ind. Eng. Chem. Res., 61 (2022) 11397-11406.

[16].           Wang J., Fu T., Meng F., Zhao D., Chuang S.S.C., Li Z. Highly active catalysis of methanol oxidative carbonylation over nano Cu2O supported on micropore-rich mesoporous carbon, Appl. Catal. B: Environ., 303 (2022) 120890.

[17].           Sun C., Meng F., Wang J., Li Z. CoZn-ZIF-derived carbon-supported Cu catalyst for methanol oxidative carbonylation to dimethyl carbonate, New J. Chem., 46 (2022) 7452-7463.

[18].           Zhang P., Meng F., Yang L., Yang G., Liang X., Li Z. Syngas to olefins over a CrMnGa/SAPO-34 bifunctional catalyst: effect of Cr and Cr/Mn ratio, Ind. Eng. Chem. Res., 60 (2021) 13214-13222.

[19].           Meng F., Li X., Zhang P., Yang L., Yang G., Ma P., Li Z. Highly active ternary oxide ZrCeZnOx combined with SAPO-34 zeolite for direct conversion of syngas into light olefins, Catal. Today, 368 (2021) 118-125.

[20].           Meng F., Li X., Zhang P., Yang L., Liu S., Li Z. A facile approach for fabricating highly active ZrCeZnOx in combination with SAPO-34 for the conversion of syngas into light olefins, Appl. Surf. Sci., 542 (2021) 148713.

 

代表性发明专利:

[1]. 孟凡会, 李忠, 王丽萍. 核壳结构的ZIF-67@ZIF-8钴基催化剂的制备方法和应用[J]. 2024年07月23日 授权, ZL 202310536304.9

[2]. 孟凡会, 李小静, 李忠, 张鹏. 一种高稳定性合成气直接制低碳烯烃的催化剂、制备方法及其应用. ZL 201811128470.0.

[3]. 孟凡会, 李忠, 程杨, 张玮, 秦改萍, 付一春, 王倩倩, 李小静, 张鹏. 一种碳包覆结构纳米铁基费托合成催化剂及其制备方法和应用. ZL 201711330761.3.

[4]. 孟凡会, 李忠, 李鑫, 高源, 程杨. 一种纳米镍基CO甲烷化催化剂的制备方法及应用. ZL 201710307104.0.

[5]. 孟凡会, 李忠, 程杨, 李鑫, 高源. 一种合成气制低碳烯烃的铁基催化剂及其制备方法和应用. ZL 201610668938.X.

[6]. 孟凡会, 王东飞, 冯永发, 李忠, 裴建勋, 王伟林, 刘俊义, 章清. 一种费托合成尾气转化为费托合成原料气的方法. ZL 201410366341.0.

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